122625-HMC698LP5 Allicdata Electronics
Allicdata Part #:

1127-2154-ND

Manufacturer Part#:

122625-HMC698LP5

Price: $ 438.38
Product Category:

Development Boards, Kits, Programmers

Manufacturer: Analog Devices Inc.
Short Description: BOARD EVAL HMC698LP5E
More Detail: HMC698LP5 Frequency Synthesizer Timing Evaluation ...
DataSheet: 122625-HMC698LP5 datasheet122625-HMC698LP5 Datasheet/PDF
Quantity: 1
1 +: $ 394.54400
Stock 1Can Ship Immediately
$ 438.38
Specifications
Series: --
Part Status: Active
Type: Timing
Function: Frequency Synthesizer
Embedded: No
Utilized IC / Part: HMC698LP5
Primary Attributes: --
Supplied Contents: Board(s)
Secondary Attributes: SMA Connectors
Base Part Number: HMC698
Description

Due to market price fluctuations, if you need to purchase or consult the price. You can contact us or emial to us:   sales@allicdata.com

Evaluation and Demonstration Boards and Kits are widely used in the development and analysis of many electronic components and devices. 122625-HMC698LP5 is such a board, which is often used in the field of electronic design and analysis. In this article, we will discuss the application field and working principle of 122625-HMC698LP5.

The key feature of 122625-HMC698LP5 is that it is a low-cost heterostructure microwave integrated circuit (HMICs) evaluation board that can be easily integrated into the development and test cycle. This board features high amplifier gain, high input and output power, low noise figure, and high dynamic range. Furthermore, it is economically priced as it is designed to offer a comprehensive solution for HMICs operations.

The application field of 122625-HMC698LP5 is broad, and there are three main areas where the board is used. Firstly, the board is ideal for mobile cellular applications and military communications applications. This is because its HMICs can effectively cope with the high-frequency environment of mobile cellular and military communications while at the same time providing low-noise operation. Secondly, the board is suitable for noise figure and gain measurement applications. As the board is designed to be highly accurate and reliable, it can be used in a wide variety of noise figure and gain measurement applications. Finally, the board is also suitable for power system applications. Its HMICs are able to provide reliable operation at high-power levels, making them suitable for power system applications such as linear amplifiers.

The working principle of 122625-HMC698LP5 is quite straightforward and simple. This board has two separate HMICs, which work in tandem to provide the desired output. Firstly, the bias supply voltage is connected to both HMICs, ensuring that the two HMICs receive the same voltage level. Secondly, the input signal is applied to the input port of the first HMIC, which in turn amplifies it. Finally, this amplified signal is applied to the input port of the second HMIC, which further amplifies the signal before it is output via the output port.

In addition to its application field and working principle, 122625-HMC698LP5 has several other key features. It has a built-in temperature control feature that allows users to adjust the bias voltage of the HMICs according to their requirements. Furthermore, the board has a predefined output power control feature that allows users to adjust the output power of the board as well as its gain control. Finally, the board has a built-in harmonic balancing circuit that allows it to cope with high-frequency signals without having to reduce its noise figure too much.

To conclude, 122625-HMC698LP5 is an HMIC evaluation board that can be used in a wide range of applications, from mobile cellular applications and military communications applications to noise figure and gain measurement applications. It has a simple yet effective working principle, whereby two HMICs work in tandem to provide the desired output. Furthermore, the board has several key features such as a temperature control feature, an output power control feature, and a harmonic balancing circuit.

The specific data is subject to PDF, and the above content is for reference

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